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Merged the trunk 8892,8894,8898
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@ -1820,7 +1820,7 @@ Finds the global minimum and maximum in an array
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.. note::
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When ``minIdx`` is not NULL, it must have at least 2 elements (as well as ``maxIdx``), even if ``src`` is a single-row or single-column matrix. In OpenCV (following MATLAB) each array has at least 2 dimensions, i.e. single-row matrix is ``Mx1`` matrix (and therefore ``minIdx``/``maxIdx`` will be ``(i1,0)``/``(i2,0)``) and single-column matrix is ``1xN`` matrix (and therefore ``minIdx``/``maxIdx`` will be ``(0,j1)``/``(0,j2)``).
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When ``minIdx`` is not NULL, it must have at least 2 elements (as well as ``maxIdx``), even if ``src`` is a single-row or single-column matrix. In OpenCV (following MATLAB) each array has at least 2 dimensions, i.e. single-column matrix is ``Mx1`` matrix (and therefore ``minIdx``/``maxIdx`` will be ``(i1,0)``/``(i2,0)``) and single-row matrix is ``1xN`` matrix (and therefore ``minIdx``/``maxIdx`` will be ``(0,j1)``/``(0,j2)``).
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:param maxIdx: Pointer to the returned maximum location (in nD case). ``NULL`` is used if not required.
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@ -667,7 +667,7 @@ struct SURFInvoker
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besty = sumy;
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}
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}
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descriptor_dir = fastAtan2( besty, bestx );
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descriptor_dir = fastAtan2( -besty, bestx );
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}
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kp.angle = descriptor_dir;
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if( !descriptors || !descriptors->data )
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@ -291,9 +291,9 @@ public:
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typedef typename Distance::ValueType ValueType;
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typedef typename Distance::ResultType DistanceType;
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CV_DescriptorExtractorTest( const string _name, DistanceType _maxDist, const Ptr<DescriptorExtractor>& _dextractor, float _prevTime,
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CV_DescriptorExtractorTest( const string _name, DistanceType _maxDist, const Ptr<DescriptorExtractor>& _dextractor,
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Distance d = Distance() ):
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name(_name), maxDist(_maxDist), prevTime(_prevTime), dextractor(_dextractor), distance(d) {}
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name(_name), maxDist(_maxDist), dextractor(_dextractor), distance(d) {}
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protected:
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virtual void createDescriptorExtractor() {}
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@ -401,7 +401,7 @@ protected:
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double t = (double)getTickCount();
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dextractor->compute( img, keypoints, calcDescriptors );
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t = getTickCount() - t;
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ts->printf(cvtest::TS::LOG, "\nAverage time of computing one descriptor = %g ms (previous time = %g ms).\n", t/((double)cvGetTickFrequency()*1000.)/calcDescriptors.rows, prevTime );
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ts->printf(cvtest::TS::LOG, "\nAverage time of computing one descriptor = %g ms.\n", t/((double)cvGetTickFrequency()*1000.)/calcDescriptors.rows );
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if( calcDescriptors.rows != (int)keypoints.size() )
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{
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@ -486,7 +486,6 @@ protected:
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string name;
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const DistanceType maxDist;
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const float prevTime;
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Ptr<DescriptorExtractor> dextractor;
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Distance distance;
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@ -988,28 +987,28 @@ TEST( Features2d_Detector_SURF, regression )
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TEST( Features2d_DescriptorExtractor_SIFT, regression )
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{
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CV_DescriptorExtractorTest<L2<float> > test( "descriptor-sift", 0.03f,
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DescriptorExtractor::create("SIFT"), 8.06652f );
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DescriptorExtractor::create("SIFT") );
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test.safe_run();
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}
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TEST( Features2d_DescriptorExtractor_SURF, regression )
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{
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CV_DescriptorExtractorTest<L2<float> > test( "descriptor-surf", 0.05f,
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DescriptorExtractor::create("SURF"), 0.147372f );
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DescriptorExtractor::create("SURF") );
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test.safe_run();
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}
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TEST( Features2d_DescriptorExtractor_OpponentSIFT, regression )
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{
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CV_DescriptorExtractorTest<L2<float> > test( "descriptor-opponent-sift", 0.18f,
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DescriptorExtractor::create("OpponentSIFT"), 8.06652f );
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DescriptorExtractor::create("OpponentSIFT") );
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test.safe_run();
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}
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TEST( Features2d_DescriptorExtractor_OpponentSURF, regression )
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{
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CV_DescriptorExtractorTest<L2<float> > test( "descriptor-opponent-surf", 0.3f,
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DescriptorExtractor::create("OpponentSURF"), 0.147372f );
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DescriptorExtractor::create("OpponentSURF") );
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test.safe_run();
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}
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